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, sensing techniques, optimisation theory and algorithms, multi-modal data processing, high-performance computing, mathematical image analysis, geometric modelling, acoustic signal propagation, Monte Carlo
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our Staff Benefits page (clicking this link will open a new window). Flexible working We are open to discussions about flexible working. Whether it’s a job share, part time, compressed hours or another
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. You have experience in matrix algorithms, data compression, parallel computing, optimization of advanced applications on parallel and distributed systems. An excellent scientific track record proven
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. Experience of designing and carrying out empirical research with practitioners and/or victims. Flexible working We are open to discussions about flexible working. Whether it’s a part time, compressed hours
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dimensional materials to DNA, and employed such heterostructures for sensing and optoelectronic applications . We now want to refine strategies that employ DNA nanotechnology to control the formation of 2D
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specifically you will work at developing an electro-optic dual comb source and at testing it in microscopy, spectroscopy and sensing applications. We are looking for motivated and independent candidates with a
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testing it in microscopy, spectroscopy and sensing applications. We are looking for motivated and independent candidates with a track record in experimental research in the field of optical frequency combs
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and with expertise spanning knowledge graphs, GeoAI, research data management, geo-semantics, geographic information retrieval, geo-visualization, social sensing, and related fields. We are interested
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we strive to build a workplace where everyone feels a sense of belonging. All new staff who join us learn about the importance of diversity and inclusion to the Museum and how to contribute to creating
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of the project is to design, implement, and utilise a new beamline for ultrafast science with ultrabroadband optical attosecond pulses. The work will involve both ultrafast pulse compression and frequency